首页> 美国卫生研究院文献>Stem Cells International >Effects of Human Mesenchymal Stem Cells Isolated from Whartons Jelly of the Umbilical Cord and Conditioned Media on Skeletal Muscle Regeneration Using a Myectomy Model
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Effects of Human Mesenchymal Stem Cells Isolated from Whartons Jelly of the Umbilical Cord and Conditioned Media on Skeletal Muscle Regeneration Using a Myectomy Model

机译:取自沃顿氏脐带果冻和条件培养基的人间充质干细胞对使用Myectomy模型的骨骼肌再生的影响

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摘要

Skeletal muscle has good regenerative capacity, but the extent of muscle injury and the developed fibrosis might prevent complete regeneration. The in vivo application of human mesenchymal stem cells (HMSCs) of the umbilical cord and the conditioned media (CM) where the HMSCs were cultured and expanded, associated with different vehicles to induce muscle regeneration, was evaluated in a rat myectomy model. Two commercially available vehicles and a spherical hydrogel developed by our research group were used. The treated groups obtained interesting results in terms of muscle regeneration, both in the histological and in the functional assessments. A less evident scar tissue, demonstrated by collagen type I quantification, was present in the muscles treated with HMSCs or their CM. In terms of the histological evaluation performed by ISO 10993-6 scoring, it was observed that HMSCs apparently have a long-term negative effect, since the groups treated with CM presented better scores. CM could be considered an alternative to the in vivo transplantation of these cells, as it can benefit from the local tissue response to secreted molecules with similar results in terms of muscular regeneration. Searching for an optimal vehicle might be the key point in the future of skeletal muscle tissue engineering.
机译:骨骼肌具有良好的再生能力,但是肌肉损伤的程度和发达的纤维化可能阻止完全再生。在大鼠子宫切除模型中,评估了脐带间充质干细胞(HMSCs)和HMSCs在其中培养和扩增的条件培养基(CM)的体内应用,以及与不同媒介物诱导肌肉再生的相关性。我们的研究小组使用了两种市售车辆和球形水凝胶。在组织学和功能评估方面,治疗组在肌肉再生方面均获得了有趣的结果。 HMSCs或CM处理过的肌肉中存在明显的疤痕组织(通过I型胶原蛋白定量)。根据ISO 10993-6评分进行的组织学评估,可以观察到HMSC显然具有长期负面影响,因为CM治疗组的评分更高。 CM可以被认为是这些细胞体内移植的替代方法,因为CM可以受益于局部组织对分泌分子的反应,在肌肉再生方面具有相似的结果。寻找最佳载具可能是未来骨骼肌组织工程学的重点。

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